Inhibition of Calcineurin Results in Increased Susceptibility to Voriconazole in the White-Nose Syndrome Fungus Pseudogymnoascus destructans

Read the full article See related articles

Listed in

This article is not in any list yet, why not save it to one of your lists.
Log in to save this article

Abstract

Pseudogymnoascus destructans is a psychrophilic ascomycete fungus that causes White-Nose Syndrome in North American hibernating bats. P. destructans invades the tissue present in bats’ noses and wing membranes, causing the characteristic white nose and cupping erosion in the wings. P. destructans exhibits characteristics of a hemibiotrophic fungal pathogen, in which P. destructans can invade the host cells without inducing damage. During this stage, P. destructans hyphae assume a morphology similar to fungal plant pathogens during the biotrophic stage of infection. However, the mechanism by which P. destructans regulates its morphology and virulence is not fully understood. The phosphatase calcineurin is a key regulator of fungal stress response and virulence and could play a role in P. destructans virulence. Calcineurin can be inhibited using FK506 or Cyclosporin A (CSA). FK506 interacts with FKBP12, while CSA interacts with Cyclosporin A, and the protein-drug complex then inhibits calcineurin activity. Here, we show that P. destructans is intrinsically resistant to one calcineurin inhibitor (FK506), possibly because P. destructans FKBP12 has a lysine instead of the conserved arginine at position 89, which has been shown to reduce the affinity of the FKBP12-FK506 complex for calcineurin. Using cyclosporin A, we found that calcineurin is important for fungal growth. Additionally, calcineurin inhibition increases voriconazole inhibition. In contrast, calcineurin inhibition was antagonistic to the anti-cell wall drug micafungin. Taken together, calcineurin’s role in fungal growth and response to voriconazole is conserved in P. destructans but may play a unique role in P. destructans response to micafungin.

Article activity feed